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A Simplified Method to Estimate Sc-CO 2 Extraction of Bioactive Compounds from Different Matrices: Chili Pepper vs. Tomato By-Products

机译:一种估算从不同基质中生物活性化合物的Sc-CO 2提取的简化方法:辣椒与番茄副产物

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In the last few decades, the search for bioactive compounds or “target molecules” from natural sources or their by-products has become the most important application of the supercritical fluid extraction (SFE) process. In this context, the present research had two main objectives: (i) to verify the effectiveness of a two-step SFE process (namely, a preliminary Sc-CO 2 extraction of carotenoids followed by the recovery of polyphenols by ethanol coupled with Sc-CO 2 ) in order to obtain bioactive extracts from two widespread different matrices (chili pepper and tomato by-products), and (ii) to test the validity of the mathematical model proposed to describe the kinetics of SFE of carotenoids from different matrices, the knowledge of which is required also for the definition of the role played in the extraction process by the characteristics of the sample matrix. On the basis of the results obtained, it was possible to introduce a simplified kinetic model that was able to describe the time evolution of the extraction of bioactive compounds (mainly carotenoids and phenols) from different substrates. In particular, while both chili pepper and tomato were confirmed to be good sources of bioactive antioxidant compounds, the extraction process from chili pepper was faster than from tomato under identical operating conditions.
机译:在过去的几十年中,从自然资源或其副产物中寻找生物活性化合物或“目标分子”已成为超临界流体萃取(SFE)工艺的最重要应用。在这种情况下,本研究有两个主要目标:(i)验证两步SFE工艺的有效性(即,先用Sc-CO 2提取类胡萝卜素,然​​后通过乙醇与Sc-偶联的方法回收多酚CO 2),以从两种广泛存在的不同基质(辣椒和番茄副产品)中获得生物活性提取物,以及(ii)测试提出的描述不同基质中类胡萝卜素SFE动力学的数学模型的有效性,通过样品基质的特征来定义在萃取过程中所起的作用还需要知道。根据获得的结果,可以引入简化的动力学模型,该模型能够描述从不同底物中提取生物活性化合物(主要是类胡萝卜素和苯酚)的时间演变。特别是,尽管辣椒和番茄都被证实是生物活性抗氧化剂的良好来源,但在相同的操作条件下,从辣椒中提取的过程比从番茄中提取的过程要快。

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